[HTML][HTML] Inhibition of the H3K27 demethylase UTX enhances the epigenetic silencing of HIV proviruses and induces HIV-1 DNA hypermethylation but fails to …

K Nguyen, C Dobrowolski, M Shukla, WK Cho… - PLoS …, 2021 - journals.plos.org
One strategy for a functional cure of HIV-1 is “block and lock”, which seeks to permanently
suppress the rebound of quiescent HIV-1 by epigenetic silencing. For the bivalent promoter …

Inhibition of the H3K27 demethylase UTX enhances the epigenetic silencing of HIV proviruses and induces HIV-1 DNA hypermethylation but fails to permanently block …

K Nguyen, C Dobrowolski, M Shukla, WK Cho… - PLoS …, 2021 - go.gale.com
One strategy for a functional cure of HIV-1 is" block and lock", which seeks to permanently
suppress the rebound of quiescent HIV-1 by epigenetic silencing. For the bivalent promoter …

[PDF][PDF] Inhibition of the H3K27 demethylase UTX enhances the epigenetic silencing of HIV proviruses and induces HIV-1 DNA hypermethylation 2 but fails to …

K Nguyen, C Dobrowolski, M Shukla, WK Cho, J Karn - researchgate.net
One strategy for a functional cure of HIV-1 is “block and lock”, which seeks to 23
permanently suppress the rebound of quiescent HIV-1 by epigenetic silencing. For the 24 …

Inhibition of the H3K27 demethylase UTX enhances the epigenetic silencing of HIV proviruses and induces HIV-1 DNA hypermethylation but fails to permanently block …

K Nguyen, C Dobrowolski, M Shukla… - PLoS …, 2021 - search.ebscohost.com
One strategy for a functional cure of HIV-1 is" block and lock", which seeks to permanently
suppress the rebound of quiescent HIV-1 by epigenetic silencing. For the bivalent promoter …

Inhibition of the H3K27 demethylase UTX enhances the epigenetic silencing of HIV proviruses and induces HIV-1 DNA hypermethylation but fails to permanently block …

K Nguyen, C Dobrowolski, M Shukla, WK Cho… - Plos …, 2021 - europepmc.org
One strategy for a functional cure of HIV-1 is “block and lock”, which seeks to permanently
suppress the rebound of quiescent HIV-1 by epigenetic silencing. For the bivalent promoter …

Inhibition of the H3K27 demethylase UTX enhances the epigenetic silencing of HIV proviruses and induces HIV-1 DNA hypermethylation but fails to permanently block …

M Shukla, WK Cho - PLoS Pathogens, 2021 - search.proquest.com
One strategy for a functional cure of HIV-1 is “block and lock”, which seeks to permanently
suppress the rebound of quiescent HIV-1 by epigenetic silencing. For the bivalent promoter …

Inhibition of the H3K27 demethylase UTX enhances the epigenetic silencing of HIV proviruses and induces HIV-1 DNA hypermethylation but fails to permanently block …

K Nguyen, C Dobrowolski, M Shukla, WK Cho, B Luttge… - 2021 - agris.fao.org
One strategy for a functional cure of HIV-1 is" block and lock", which seeks to permanently
suppress the rebound of quiescent HIV-1 by epigenetic silencing. For the bivalent promoter …

[PDF][PDF] Inhibition of the H3K27 demethylase UTX enhances the epigenetic silencing of HIV proviruses and induces HIV-1 DNA hypermethylation 2 but fails to …

K Nguyen, C Dobrowolski, M Shukla, WK Cho, J Karn - scholar.archive.org
One strategy for a functional cure of HIV-1 is “block and lock”, which seeks to 23
permanently suppress the rebound of quiescent HIV-1 by epigenetic silencing. For the 24 …

Inhibition of the H3K27 demethylase UTX enhances the epigenetic silencing of HIV proviruses and induces HIV-1 DNA hypermethylation but fails to permanently block …

K Nguyen, C Dobrowolski, M Shukla… - PLoS …, 2021 - pubmed.ncbi.nlm.nih.gov
One strategy for a functional cure of HIV-1 is" block and lock", which seeks to permanently
suppress the rebound of quiescent HIV-1 by epigenetic silencing. For the bivalent promoter …

Inhibition of the H3K27 demethylase UTX enhances the epigenetic silencing of HIV proviruses and induces HIV-1 DNA hypermethylation but fails to permanently block …

K Nguyen, C Dobrowolski, M Shukla, WK Cho, J Karn - bioRxiv, 2021 - biorxiv.org
One strategy for a functional cure of HIV-1 is “block and lock”, which seeks to permanently
suppress the rebound of quiescent HIV-1 by epigenetic silencing. For the HIV LTR, both …